Thiamine is found in a wide variety of foods at low concentrations. Yeast, yeast extract, and pork are the most highly concentrated sources of thiamine.
Muscle cells have the highest concentration of mitochondria.
Muscle cells and liver cells have the highest concentration of mitochondria.
The highest concentration of mitochondria in the human body is found in muscle cells, particularly in the muscles used for endurance activities like the heart and skeletal muscles.
The concentration of calcium ion is greater in the sarcoplasmic reticulum compared to the sarcoplasm of a resting muscle. This is because the sarcoplasmic reticulum stores and releases calcium ions during muscle contraction.
The specific structure within a muscle cell that contains the sarcomere I band and is responsible for muscle contraction is called the myofibril.
Muscle cells have the highest concentration of mitochondria.
Muscle cells and liver cells have the highest concentration of mitochondria.
functioning of nerves, , muscle cells, and the brain
The highest concentration of mitochondria in the human body is found in muscle cells, particularly in the muscles used for endurance activities like the heart and skeletal muscles.
no thiamin is suppose to help your nerves
Fast muscle fibers have the greater metabolic activity and have the higher concentration of catalase enzyme.
Main Muscle Worked: Biceps
Trismus
Muscle requires glucose, and so there is not the same concentration of glucose in blood entering and exiting a muscle. The exiting blood will be lower in glucose.
Intracellular fluid is the body fluid that is highest in potassium. Approximately 98% of the body's potassium is found inside cells, primarily within muscle and nerve tissues. In contrast, extracellular fluid, including blood plasma, contains significantly lower levels of potassium. This high intracellular concentration is crucial for various cellular functions, including maintaining membrane potential and regulating nerve impulses.
People who are very active require plenty of thiamin (vitamin B1) because it plays a crucial role in energy metabolism. Thiamin helps convert carbohydrates into glucose, which is the primary fuel source for physical activity. Additionally, it supports the proper functioning of the nervous system and muscle contraction, both essential for maintaining high levels of activity. A deficiency in thiamin can lead to fatigue and decreased performance, making adequate intake vital for active individuals.
The concentration of calcium ion is greater in the sarcoplasmic reticulum compared to the sarcoplasm of a resting muscle. This is because the sarcoplasmic reticulum stores and releases calcium ions during muscle contraction.